Delivery of Macromolecules Using Arginine-Rich Cell-Penetrating Peptides: Ways to Overcome Endosomal Entrapment

被引:393
作者
El-Sayed, Ayman [1 ,3 ]
Futaki, Shiroh [2 ]
Harashima, Hideyoshi [1 ,3 ]
机构
[1] Hokkaido Univ, Fac Pharmaceut Sci, Kita Ku, Sapporo, Hokkaido 0600812, Japan
[2] Kyoto Univ, Inst Chem Res, Kyoto 6110011, Japan
[3] Japan Sci & Technol Agcy JST, CREST, Kawaguchi, Saitama 3320012, Japan
基金
日本学术振兴会;
关键词
arginine-rich cell-penetrating peptides; endosomal escape; membrane-disruptive peptides; oligoarginine; protein transduction domains; PROTEIN TRANSDUCTION DOMAIN; NONVIRAL GENE DELIVERY; TAT-DERIVED PEPTIDE; NANO DEVICE; NUCLEAR DELIVERY; DNA-TRANSFECTION; INTERNALIZATION MECHANISMS; INTRACELLULAR TRAFFICKING; ENHANCED DELIVERY; CATIONIC TAT;
D O I
10.1208/s12248-008-9071-2
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Arginine-rich cell-penetrating peptides (AR-CPPs) are very promising tools for the delivery of therapeutic macromolecules such as peptides, proteins, and nucleic acids. These peptides allow efficient internalization of the linked cargos intracellularly through the endocytic pathway. However, when linked to bulky cargos, entrapment in the endocytic vesicles is a major limitation to the application of these peptides in cytosolic delivery. Attachment of a compatible endosomal escape device is, therefore, necessary to allow cytosolic delivery of the peptide-attached cargo. This review presents different endosomal escape devices currently in application in combination with AR-CPPs. Applications of fusogenic lipids, membrane-disruptive peptides, membrane-disruptive polymers, lysosomotropic agents, and photochemical internalization to enhance the cytosolic delivery of AR-CPPs-attached cargos are presented. The properties of each system and its mechanism of action for the enhancement of endosomal escape are discussed, together with its applications for the delivery of different macromolecules in vitro and, if applicable, in vivo.
引用
收藏
页码:13 / 22
页数:10
相关论文
共 96 条
[1]   Efficient splicing correction by PNA conjugation to an R6-Penetratin delivery peptide [J].
Abes, Said ;
Turner, John J. ;
Ivanova, Gabriela D. ;
Owen, David ;
Williams, Donna ;
Arzumanov, Andrey ;
Clair, Philippe ;
Gait, Michael J. ;
Lebleu, Bernard .
NUCLEIC ACIDS RESEARCH, 2007, 35 (13) :4495-4502
[2]   Intracellular traffic and fate of protein transduction domains HIV-1 TAT peptide and octaarginine. Implications for their utilization as drug delivery vectors [J].
Al-Taei, S ;
Penning, NA ;
Simpson, JC ;
Futaki, S ;
Takeuchi, T ;
Nakase, I ;
Jones, AT .
BIOCONJUGATE CHEMISTRY, 2006, 17 (01) :90-100
[3]   Covalent attachment of low molecular weight poly(ethylene imine) improves tat peptide mediated gene delivery [J].
Alexis, Frank ;
Lo, Seong-Loong ;
Wang, Shu .
ADVANCED MATERIALS, 2006, 18 (16) :2174-+
[4]   Nuclear delivery of macromolecules: barriers and carriers [J].
Belting, M ;
Sandgren, S ;
Wittrup, A .
ADVANCED DRUG DELIVERY REVIEWS, 2005, 57 (04) :505-527
[5]  
Berg K., 2006, MED LASER APPL, V21, P239, DOI DOI 10.1016/J.MLA.2006.08.004
[6]   Real-time transmembrane translocation of penetratin driven by light-generated proton pumping [J].
Bjorklund, Jorgen ;
Biverstahl, Henrik ;
Graslund, Astrid ;
Maler, Lena ;
Brzezinski, Peter .
BIOPHYSICAL JOURNAL, 2006, 91 (04) :L29-L31
[7]   A VERSATILE VECTOR FOR GENE AND OLIGONUCLEOTIDE TRANSFER INTO CELLS IN CULTURE AND IN-VIVO - POLYETHYLENIMINE [J].
BOUSSIF, O ;
LEZOUALCH, F ;
ZANTA, MA ;
MERGNY, MD ;
SCHERMAN, D ;
DEMENEIX, B ;
BEHR, JP .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1995, 92 (16) :7297-7301
[8]   Tat peptide-mediated cellular delivery:: back to basics [J].
Brooks, H ;
Lebleu, B ;
Vivès, E .
ADVANCED DRUG DELIVERY REVIEWS, 2005, 57 (04) :559-577
[9]   STRUCTURE OF INFLUENZA HEMAGGLUTININ AT THE PH OF MEMBRANE-FUSION [J].
BULLOUGH, PA ;
HUGHSON, FM ;
SKEHEL, JJ ;
WILEY, DC .
NATURE, 1994, 371 (6492) :37-43
[10]   Endosome disruption enhances the functional nuclear delivery of Tat-fusion proteins [J].
Caron, NJ ;
Quenneville, SP ;
Tremblay, JP .
BIOCHEMICAL AND BIOPHYSICAL RESEARCH COMMUNICATIONS, 2004, 319 (01) :12-20